Digital radiometers for earth science

C. Ruf, S. Gross
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引用次数: 4

Abstract

Digital microwave radiometers replace as much of the conventional analog circuitry in a radiometer as possible with an analog-to-digital converter followed by a high speed Digital Signal Processing (DSP) stage. Digital technology adds capabilities to a radiometer that would otherwise be much more difficult (and often cost prohibitive) to include. The quality of each of the performance enhancements enabled by digital radiometry (e.g. spectral resolution, RFI detectability threshold, and full Stokes polarization purity) is dependent on certain aspects of the digital technology (e.g. number of bits of digitization, digitization oversampling rate, length of transverse digital filters, number of internal bits utilized by the DSP algorithm, and core memory and logic block sizes in the DSP chip). These factors are examined and current and projected radiometer performance capabilities estimated given the current and projected state of the art in DSP technology.
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地球科学用数字辐射计
数字微波辐射计尽可能多地用模数转换器和高速数字信号处理(DSP)级取代辐射计中的传统模拟电路。数字技术增加了辐射计的功能,否则将更加困难(而且往往成本高昂)。通过数字辐射测量(例如光谱分辨率、RFI可检测阈值和全Stokes偏振纯度)实现的每项性能增强的质量取决于数字技术的某些方面(例如数字化的位数、数字化过采样率、横向数字滤波器的长度、DSP算法利用的内部位数、DSP芯片中的核心存储器和逻辑块大小)。考虑到DSP技术的当前和预计状态,对这些因素进行了检查,并估计了当前和预计的辐射计性能。
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